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Study of the effect of water depth on potential flow solution of the OC4 Semisubmersible Floating Offshore Wind Turbine

机译:水深水深对OC4半机漂浮近海风力涡轮机潜在流量解决的影响

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This work aims at assessing the influence of water depth on the potential flow solution for a semisubersible floating offshore wind turbine. More specifically, the system developed for the Offshore Code Comparison Collaboration Continuation (OC4) of the International Energy Agency IEA was considered for this paper. This work has been inspired by previous studies concerning the effect of shallow water on Liquified Natural Gas Carriers (LNGC). The influence of water depth on the hydrodynamics of such systems is evident from measurements as well as from simulations, specifically when secondary effects in the wave and flow modelling are addressed. This scenario has motivated the comparative study for the Floating Wind Turbine herein reported, also taking into account second order hydrodynamics (Quadratic Transfer Functions, QTF) as well as low frequency contribution in the incoming wave, due to shallow water (Setdown effect). The simulations were conducted relying on the codes DIFFRAC and aNySIM, developed at Maritime Research Institute of Netherlands (MARIN) and the results are presented for a range of water depth between the nominal value of 200 m and the extreme shallow water of 30 m.
机译:这项工作旨在评估水深对半可浮动海上风力涡轮机的潜在流量解决方案的影响。更具体地说,为本论文考虑了为国际能源机构IEA的海上代码比较协作延续(OC4)开发的系统。这项工作受到以前的研究,关于浅水对液化天然气载体(LNGC)的影响。水深对这种系统的流体动力学的影响是明显的,从测量以及模拟中明显明显,特别是当波动和流模型中的二次效果都是解决的。这种情况有动力,由于浅水(落地效应),还考虑了本文报告的浮风式涡轮机的比较研究报告,还考虑了二阶流体动力学(二次转移函数,QTF)以及在进入波中的低频贡献。依赖于德国(Marin)海事研究所(Marin)开发的代码和Anysim进行了模拟,并在200米的标称值和30米的极端浅水之间呈现了一系列水深。

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